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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Limb specific Acvr1‐knockout during embryogenesis in mice exhibits great toe malformation as seen in Fibrodysplasia Ossificans Progressiva (FOP)
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Limb specific Acvr1‐knockout during embryogenesis in mice exhibits great toe malformation as seen in Fibrodysplasia Ossificans Progressiva (FOP)

机译:肢体发生在胚胎发生期间的肢体特异性ACVR1-kexptout呈现出巨大的脚趾畸形,如纤维型普拉西亚Ossificans进展(FOP)所见

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Abstract Purpose This study analyzes Prx1 ‐specific conditional knockout of Acvr1 aiming to elucidate the endogenous role of Acvr1 during limb formation in early embryonic development. ACVR1 can exhibit activating and inhibiting function in BMP signaling. ACVR1 gain‐of‐function mutations can cause the rare disease fibrodysplasia ossificans progressiva (FOP), where patients develop ectopic bone replacing soft tissue, tendons and ligaments. Methods Whole‐mount in situ hybridization and skeletal preparations revealed that following limb‐specific conditional knockout of Acvr1 , metacarpals and proximal phalanges were shortened and additional cartilage and bone elements were formed. Results The analysis of a set of marker genes including ligands and receptors of BMP signaling as well as genes involved in patterning and tendon and cartilage formation, revealed temporal disturbances with distinct spatial patterns. The most striking result was that in the absence of Acvr1 in mesoderm precursor cells, first digits were drastically malformed. Conclusion In FOP, malformation of big toes can serve as a first soft marker in diagnostics. The surprising similarities in phenotype between the described conditional knockout of Acvr1 and the FOP mouse model, indicates a natural inhibitory function of ACVR1. This represents a further step towards better understanding the role of Acvr1 and developing treatment options for FOP.
机译:摘要目的本研究分析了ACVR1的PRX1特异性条件淘汰旨在阐明ACVR1在早期胚胎发育中肢体形成过程中的内源性作用。 ACVR1可以在BMP信号传导中表现出激活和抑制功能。 ACVR1功能突变可导致罕见疾病纤维纤维病胰腺癌进展(FOP),患者患者造成软组织,肌腱和韧带的异位骨。方法缩短了全架原位杂交和骨骼制剂的含量突出,缩短了肢体特异性条件敲除,并形成额外的软骨和骨元素。结果分析了一组标记基因,包括BMP信号传导的配体和受体以及参与图案化和肌腱和软骨形成的基因,揭示了具有明显的空间模式的时间扰动。最引人注目的结果是,在不存在中胚层前体细胞中的ACVR1的情况下,首先是剧烈畸形的。结论在FOP中,大脚趾的畸形可以作为诊断中的第一个软标记。 ACVR1和FOP小鼠模型的所述条件敲除在表型中的令人惊讶的相似性表明ACVR1的自然抑制功能。这代表了更好地理解ACVR1和开发FOP的治疗选择的进一步阶段。

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